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Dynamic Responses of Pontoons Connecting Process of Mobile Offshore Base

Dynamic Responses of Pontoons Connecting Process of Mobile Offshore Base
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摘要 The dynamic responses of two pontoons while connected with each other in irregular waves are calculated by means of three-dimensional (3-D) potential flow theory. The computation is to find the optimal status for connection at a certain sea state. On the basis of the relative motion of two pontoons in irregular waves, Visual FORTRAN programming language, as well as OpenGL (Open Graphics Library), is used to develop a set of virtual reality system of the relative motion of two pontoons, which is fully interactive with realistic effect. The transfinite interpolation scheme is applied for the mesh generation of wave surface, and the wave motion is simulated by surface elevation and calculated by 3-D potential flow theory. The dynamic responses of two pontoons while connected with each other in irregular waves are calculated by means of three-dimensional (3-D) potential flow theory. The computation is to find the optimal status for connection at a certain sea state. On the basis of the relative motion of two pontoons in irregular waves, Visual FORTRAN programming language, as well as OpenGL (Open Graphics Library), is used to develop a set of virtual reality system of the relative motion of two pontoons, which is fully interactive with realistic effect. The transfinite interpolation scheme is applied for the mesh generation of wave surface, and the wave motion is simulated by surface elevation and calculated by 3-D potential flow theory.
出处 《China Ocean Engineering》 SCIE EI 2010年第1期191-198,共8页 中国海洋工程(英文版)
基金 supported by the National Natural Science Foundation of China(Grant No.50579047)
关键词 pontoons connection dynamic response 3-Dpotentialflow theory irregularwozes simulation OPENGL pontoons connection dynamic response 3-Dpotentialflow theory irregularwozes simulation OpenGL
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